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首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Performance augmentation of flat plate solar water collector using phase change materials and nanocomposite phase change materials: A review
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Performance augmentation of flat plate solar water collector using phase change materials and nanocomposite phase change materials: A review

机译:使用相变材料和纳米复合材料相变材料进行平板太阳能收集器的性能增强:综述

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Harvesting solar energy through usage of flat plate solar water collector (FPSWCs) has been widely used in different domestic, agricultural, and industrial applications. Phase change materials (PCMs), due to their unique thermo-physical properties, have been exploited in different designs of solar collectors to maximize the useful heat gained by collectors. Moreover, adding nanoparticles to PCMs to produce nanocomposite (NC) PCMs with superior thermo-physical properties added new advantages to the applications of these materials in solar collector applications. This literature review focuses on the different developments of these materials and their implementation with flat plate solar water collectors. Furthermore, the effect of adding different types of nanoparticles, including: metal, metal oxides, carbon nanoparticles, a high thermal conductivity skeleton graphite, and metal foams, on the heat transfer behavior and thermal conductivity of PCMs are also reviewed and analyzed. The reviewed results indicated that a significant improvement in the thermal conductivity of PCMs has been obtained using carbon-based nanoparticles, specifically graphite and graphene nano-platelets compared to metal and metal oxides nanoparticles at different nanoparticle concentrations. It is also revealed that, the integration of the PCMs in FPSWCs leads to a satisfactory storage capacity and could provide hot water temperature for a longer time. Moreover, it is recommended that the use of NCPCMs may be considered as an effective tool to improve the efficiency of the FPSWC. However, further optimization studies are needed to explore the impact of different factors such as nanoparticle type, nanoparticle weight fraction, nanoparticle size, and PCM type on the collector performance. A noteworthy observations, important proportionalities, and future trends are also discussed. (C) 2019 Published by Elsevier B.V. on behalf of Institution of Chemical Engineers.
机译:通过使用平板太阳能电池(FPSWCS)采伐太阳能已被广泛应用于不同的国内,农业和工业应用。相变材料(PCM)由于其独特的热物理性质,已经利用了太阳能收集器的不同设计,以最大化收集器所获得的有用热量。此外,将纳米颗粒添加到PCM中以产生具有优异的热物理性质的纳米复合材料(NC)PCM,为太阳能收集器应用中的这些材料的应用增加了新的优势。该文献综述侧重于这些材料的不同发展及其与平板太阳能集热器的实施。此外,还综述了添加不同类型的纳米颗粒,包括:金属,金属氧化物,碳纳米粒子,高导热骨架石墨和金属泡沫的效果,并分析了PCM的热传递行为和导热率。审查的结果表明,与不同纳米颗粒浓度的金属和金属氧化物纳米颗粒相比,使用基于碳基纳米颗粒,特别是石墨和石墨烯纳米粒子获得的PCMS的导热率显着改善。还透露,PCMS在FPSWC中的集成导致令人满意的存储容量,并且可以提供热水温度较长的时间。此外,建议使用NCPCMS的使用可以被认为是提高FPSWC效率的有效工具。然而,需要进一步的优化研究来探讨纳米粒子型,纳米颗粒重量级分,纳米颗粒尺寸和PCM类型等不同因素对收集器性能的影响。还讨论了一个值得注意的观察,重要的比例和未来的趋势。 (c)2019年由Elsevier B.V发布。代表化学工程师机构。

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